Nonlinear optics is an increasingly important field for scientific and technological applications, owing to its relevance and potential for optical and optoelectronic technologies. Currently, there is an active search for suitable nonlinear material systems with efficient conversion and a small material footprint. Ideally, the material system should allow for chip integration and room-temperature operation. Two-dimensional materials are highly interesting in this regard. Particularly promising is graphene, which has demonstrated an exceptionally large nonlinearity in the terahertz regime. Yet, the light-matter interaction length in two-dimensional materials is inherently minimal, thus limiting the overall nonlinear optical conversion effici...
Optical nonlinearity is the change in the optical properties of an arbitrary medium excited by elect...
Optical nonlinearity is the change in the optical properties of an arbitrary medium excited by elect...
Graphene is conceivably the most nonlinear optoelectronic material we know. Its nonlinear optical co...
Nonlinear optics is an increasingly important field for scientific and technological applications, o...
Deinert J-C, Alcaraz Iranzo D, Perez R, et al. Grating-Graphene Metamaterial as a Platform for Terah...
We are using a metamaterial platform that combines graphene with a photonic grating structure provi...
We provide the first observation that hybridizing graphene with plasmonic metamaterial results in or...
Eid HAH, Kovalev S, Tielrooij K-J, Bonn M, Gensch M, Turchinovich D. Terahertz Nonlinear Optics of G...
Quantum materials with massless Dirac fermions - such as graphene and topological insulators - exhib...
Graphene has long been predicted to show exceptional nonlinear optical properties, especially in the...
Quantum materials with massless Dirac fermions - such as graphene and topological insulators - exhib...
Graphene is a unique 2D material that has been extensively investigated due to its extraordinary pho...
Graphene is a unique 2D material that has been extensively investigated due to its extraordinary pho...
Graphene is a nonlinear material in the terahertz (THz) frequency range, with χ(3) ∼ 10–9 m2/V2 ∼ 15...
Intriguing and unusual physical properties of graphene offer remarkable potential for advanced, phot...
Optical nonlinearity is the change in the optical properties of an arbitrary medium excited by elect...
Optical nonlinearity is the change in the optical properties of an arbitrary medium excited by elect...
Graphene is conceivably the most nonlinear optoelectronic material we know. Its nonlinear optical co...
Nonlinear optics is an increasingly important field for scientific and technological applications, o...
Deinert J-C, Alcaraz Iranzo D, Perez R, et al. Grating-Graphene Metamaterial as a Platform for Terah...
We are using a metamaterial platform that combines graphene with a photonic grating structure provi...
We provide the first observation that hybridizing graphene with plasmonic metamaterial results in or...
Eid HAH, Kovalev S, Tielrooij K-J, Bonn M, Gensch M, Turchinovich D. Terahertz Nonlinear Optics of G...
Quantum materials with massless Dirac fermions - such as graphene and topological insulators - exhib...
Graphene has long been predicted to show exceptional nonlinear optical properties, especially in the...
Quantum materials with massless Dirac fermions - such as graphene and topological insulators - exhib...
Graphene is a unique 2D material that has been extensively investigated due to its extraordinary pho...
Graphene is a unique 2D material that has been extensively investigated due to its extraordinary pho...
Graphene is a nonlinear material in the terahertz (THz) frequency range, with χ(3) ∼ 10–9 m2/V2 ∼ 15...
Intriguing and unusual physical properties of graphene offer remarkable potential for advanced, phot...
Optical nonlinearity is the change in the optical properties of an arbitrary medium excited by elect...
Optical nonlinearity is the change in the optical properties of an arbitrary medium excited by elect...
Graphene is conceivably the most nonlinear optoelectronic material we know. Its nonlinear optical co...